代表性论文:
(1)Gao, F; Yuan, PC; Gao, SJ; Deng, J; Sun, ZY; Jin, GL; Zeng, GL; Yan, B*, Active Electromagnetically Induced Transparency Effect in Graphene-Dielectric Hybrid Metamaterial and Its High-Performance Sensor Application, Nanomaterials, 2021, (11):2032
(2)Gao, F; Zhu, JW; Ma, HF; Li, KX; Yuan, PC ; Yan, B*,Tunable circular dichroism of chiral metamaterial based on phase transition of vanadium dioxide (VO2), Materials Research Express, 2020, 7 (4): 045802
(3)Lv, B; Yan, B*; Cai, PG, et al.,The study on saturation current and ideality factor of CdTe solar cell based on CdS window layer deposited with hydrogen peroxide,Semiconductor Science and Technology, 2019, 34(11): 115025
(4)Yan, B*; Gao, F; Xu, T, et al.,Electromagnetically induced transparency-like effect with circular polarization selectivity in bilayered metamaterial, Materials Research Express, 2019, 6 (11):115802
(5)Yan, B*; Ma, CH; Lv, B, et al.,The study on size dependent dipole dipole interaction in the self-assembly of twisting nanoribbons with circular polarization activation, Nanotechnology, 2019,30 (38): 385602
(6)Chen, NB ; Yan, B*, Recent Theoretical and Experimental Progress in Circularly Polarized Luminescence of Small Organic Molecules, Molecules, 2018,23 (12): 3376
(7)Yan, B*; Gao, F; Ma, HF, et al., “Chirality-dependent electromagnetically induced transparency based on a double semi-periodic helix metastructure”, Optics Letters,2018, 43:15
(8)B. Lv, B. Yan*, P.G. Cai, et al., Improving the structural and optical properties of CdS films grown by Chemical Bath Deposition with adding H2O2, Materials Letters, 2018, 225: 42-45
(9)B. Yan*, K.S. Zhong, H.F. Ma, et al., Planar chiral metamaterial design utilizing metal-silicides for giant circular dichroism and polarization rotation in the infrared region, Optics Communications, 2017, 383: 57-63
科研成果及专利:
(1) 鄢波; 刘金智; 卢忠; 隋成华; 魏高尧。一种重质碳酸钙基的铋铕共掺黄色荧光粉,中国, ZL 201110436892.6。
(2) 鄢波; 马洪锋; 隋成华; 刘险; 魏高尧。一种圆偏振光检测器及其制造方法, 中国,ZL 201410168246.X。
(3) 高凡; 鄢波; 高少军; 袁培程; 邓娟; 蔡萍根; 陈乃波; 吕斌; 李芸。一种基于石墨烯-介质复合超表面实现可调谐电磁感应透明的方法,中国,CN202110522214.5。
(4) 高凡; 鄢波; 高少军; 袁培程; 邓娟; 孙知钰; 蔡萍根; 陈乃波; 吕斌; 李芸。一种基于四分之一圆柱结构的全介质可调谐电磁感应透明超材料,中国,CN202110748898.0。
(5) 高凡; 鄢波; 袁培程; 高少军; 邓娟; 孙知钰; 蔡萍根; 陈乃波; 吕斌; 李芸。一种基于二氧化钒的实现智能化光控可编程超表面的方法,中国,CN202110941526.X。
(6) 邓娟; 鄢波; 高凡; 唐轶峻; 蔡萍根; 陈乃波; 吕斌。一种利用新型光学薄膜实现多通道信息编码的方法,中国,CN202110450216.8。